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钼与黄嘌呤氧化酶的铁硫系统之一之间的自旋-自旋相互作用及其与酶促机制的相关性。

Spin-spin interaction between molybdenum and one of the iron-sulphur systems of xanthine oxidase and its relevance to the enzymic mechanism.

作者信息

Lowe D J, Lynden-Bell R M, Bray R C

出版信息

Biochem J. 1972 Nov;130(1):239-49. doi: 10.1042/bj1300239.

Abstract
  1. Electron-paramagnetic-resonance (e.p.r.) studies at 9 and 35GHz at helium temperatures have given new information relating to the structure and mechanism of action of xanthine oxidase. 2. As reported by others, the enzyme gives two types of e.p.r. signal attributed to iron-sulphur systems. The first has g(av.)=1.95. Parameters of the second are determined as g(1) 2.12, g(2) 2.007 and g(3) 1.91, with g(av.)=2.01. This species seems to have a slightly higher redox potential than the former one. 3. Temperature-dependent changes in the form of Mo(v) e.p.r. signals from the enzyme, observed under certain conditions, are shown to be due to weak spin-spin interaction between Mo(v) and g(av.)=1.95 Fe/S. The phenomenon has been studied most fully for the Slow Mo(v) signal. Here, the spectral change takes the form of an additional approximately isotropic 11G splitting, detected below about 45 degrees K only. Samples without Fe/S reduced showed no such changes of spectrum. 4. Similar spectral changes were observed in the Rapid Mo(v) signals, obtained in rapid-freezing experiments, but only in samples corresponding to relatively long reaction times with the substrate. It is suggested therefore that the phenomenon may provide a means of distinguishing enzyme centres with Mo only reduced from those in which both Mo and Fe/S are reduced. 5. Additional rapid-freezing data tending to support a two- rather than a one-electron transfer of reducing equivalents from substrates to xanthine oxidase are reported.
摘要
  1. 在氦温度下于9GHz和35GHz进行的电子顺磁共振(e.p.r.)研究给出了与黄嘌呤氧化酶的结构和作用机制相关的新信息。2. 正如其他人所报道的,该酶给出了两种归因于铁硫系统的e.p.r.信号。第一种信号的g(av.) = 1.95。第二种信号的参数确定为g(1) = 2.12,g(2) = 2.007,g(3) = 1.91,g(av.) = 2.01。这种物质的氧化还原电位似乎比前者略高。3. 在特定条件下观察到的来自该酶的Mo(v) e.p.r.信号形式的温度依赖性变化被证明是由于Mo(v)与g(av.) = 1.95的Fe/S之间的弱自旋-自旋相互作用所致。对于慢速Mo(v)信号,对该现象进行了最充分的研究。在这里,光谱变化表现为仅在约45K以下检测到的额外的近似各向同性的11G分裂。没有Fe/S还原的样品没有显示出这种光谱变化。4. 在快速冷冻实验中获得的快速Mo(v)信号中也观察到了类似的光谱变化,但仅在与底物反应时间相对较长的样品中。因此,有人认为这种现象可能提供了一种区分仅Mo被还原的酶中心与Mo和Fe/S都被还原的酶中心的方法。5. 报道了额外的快速冷冻数据,这些数据倾向于支持还原当量从底物到黄嘌呤氧化酶的双电子而非单电子转移。

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